34. Draw the major organic product(s) for the following reactions; (*) must include correct stereochemistry; double-dagger (#) must show two products. H. HBr (a)* Br HBr (b) (1.00 equiv.) Br HBr (c)

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The image presents a question involving organic chemistry reactions, specifically focusing on drawing the major organic product(s) for a series of reactions. It emphasizes including correct stereochemistry where indicated by an asterisk (*), and reactions marked by a double dagger (‡) must show two products.

Here's a transcription and brief description of each reaction:

1. **Reaction (a)*:** 
   - Reactant: An alkene 
   - Reagent: HBr
   - Product: Alkyl bromide with specified stereochemistry, showing a bromine atom (Br) addition.

2. **Reaction (b)‡:**
   - Reactant: An alkene
   - Reagent: HBr (1.00 equiv.)
   - Products: Two different alkyl bromides, illustrating the formation of both possible regioisomers.

3. **Reaction (c)*:**
   - Reactant: Phenyl-substituted alkene
   - Reagent: HBr
   - Product: Alkyl bromide with specified configuration, displaying addition of both bromine (Br) and hydrogen (H) atoms.

4. **Reaction (d):**
   - Reactant: Cyclohexene derivative
   - Reagent: HCl
   - Product: Chloro-cyclohexane derivative.

5. **Reaction (e):**
   - Reactant: Cyclohexene derivative
   - Reagent: 48% wt. HBr
   - Condition: Heat (Δ)
   - Product: Alkyl bromide product.

6. **Reaction (f)*:**
   - Reactant: Tetramethylcyclobutene
   - Reagent: 37% wt. HCl
   - Condition: Heat
   - Product: Chlorinated cyclobutene with specified stereochemistry.

7. **Reaction (g):**
   - Reactant: Diene
   - Reagent: [H₂SO₄ / H₂O]
   - Product: Methanol adduct with an oxygen-containing functional group (OCH₃).

8. **Reaction (h):**
   - Reactant: Substituted alkene with a wedge bond
   - Reagent: [H₂SO₄ / Δ] with excess CH₃OH
   - Product: Methoxy-alkane derivative reflecting specific stereochemistry.

9. **Reaction (i)*:**
   - Reactant: Phenyl-sub
Transcribed Image Text:The image presents a question involving organic chemistry reactions, specifically focusing on drawing the major organic product(s) for a series of reactions. It emphasizes including correct stereochemistry where indicated by an asterisk (*), and reactions marked by a double dagger (‡) must show two products. Here's a transcription and brief description of each reaction: 1. **Reaction (a)*:** - Reactant: An alkene - Reagent: HBr - Product: Alkyl bromide with specified stereochemistry, showing a bromine atom (Br) addition. 2. **Reaction (b)‡:** - Reactant: An alkene - Reagent: HBr (1.00 equiv.) - Products: Two different alkyl bromides, illustrating the formation of both possible regioisomers. 3. **Reaction (c)*:** - Reactant: Phenyl-substituted alkene - Reagent: HBr - Product: Alkyl bromide with specified configuration, displaying addition of both bromine (Br) and hydrogen (H) atoms. 4. **Reaction (d):** - Reactant: Cyclohexene derivative - Reagent: HCl - Product: Chloro-cyclohexane derivative. 5. **Reaction (e):** - Reactant: Cyclohexene derivative - Reagent: 48% wt. HBr - Condition: Heat (Δ) - Product: Alkyl bromide product. 6. **Reaction (f)*:** - Reactant: Tetramethylcyclobutene - Reagent: 37% wt. HCl - Condition: Heat - Product: Chlorinated cyclobutene with specified stereochemistry. 7. **Reaction (g):** - Reactant: Diene - Reagent: [H₂SO₄ / H₂O] - Product: Methanol adduct with an oxygen-containing functional group (OCH₃). 8. **Reaction (h):** - Reactant: Substituted alkene with a wedge bond - Reagent: [H₂SO₄ / Δ] with excess CH₃OH - Product: Methoxy-alkane derivative reflecting specific stereochemistry. 9. **Reaction (i)*:** - Reactant: Phenyl-sub
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